Near-wall turbulence
Book
·
OSTI ID:5612919
Topics presented include the similarity of organized structures in turbulent shear flows, a conceptual model of the viscous wall region, the effects of surface curvature on the law of the wall, and the role of inflectional velocity profiles in wall bounded flows. Also presented are a review of knowledge on pressure fluctuations, stochastic estimation of coherent structures in turbulent boundary layers, the effect of Reynolds number on the organized motion in a turbulent boundary layer, and the structure of turbulence in heat transfer. Also discussed are the effects of high free-stream turbulence on heat transfer in turbulent boundary layer, wave interaction and stability problems, the modeling of unsteady boundary layers, and the transport of enstrophy in a turbulent boundary layer.
- OSTI ID:
- 5612919
- Country of Publication:
- United States
- Language:
- English
Similar Records
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Numerical investigation of near-wall turbulent heat transfer taking into account the unsteady heat conduction in the solid wall
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Mon Dec 31 23:00:00 EST 1984
·
OSTI ID:5495429
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Journal Article
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· Journal of Heat Transfer (Transactions of the ASME (American Society of Mechanical Engineers), Series C); (United States)
·
OSTI ID:6019145
Related Subjects
42 ENGINEERING
420400* -- Engineering-- Heat Transfer & Fluid Flow
ABSTRACTS
ATTRACTORS
BOUNDARY LAYERS
DIFFERENTIAL EQUATIONS
DOCUMENT TYPES
ENERGY TRANSFER
EQUATIONS
EQUATIONS OF MOTION
FLUID FLOW
HEAT TRANSFER
LAYERS
LEADING ABSTRACT
MASS TRANSFER
MATHEMATICAL MODELS
MEETINGS
PARTIAL DIFFERENTIAL EQUATIONS
SHEAR
STABILITY
STOCHASTIC PROCESSES
TURBULENT FLOW
UNSTEADY FLOW
VISCOUS FLOW
WALL EFFECTS
420400* -- Engineering-- Heat Transfer & Fluid Flow
ABSTRACTS
ATTRACTORS
BOUNDARY LAYERS
DIFFERENTIAL EQUATIONS
DOCUMENT TYPES
ENERGY TRANSFER
EQUATIONS
EQUATIONS OF MOTION
FLUID FLOW
HEAT TRANSFER
LAYERS
LEADING ABSTRACT
MASS TRANSFER
MATHEMATICAL MODELS
MEETINGS
PARTIAL DIFFERENTIAL EQUATIONS
SHEAR
STABILITY
STOCHASTIC PROCESSES
TURBULENT FLOW
UNSTEADY FLOW
VISCOUS FLOW
WALL EFFECTS